Influence Parameters Analysis of Forming Quality and System Dynamics Simulation of Vertical Steel Bar Benting

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Abstract:

The vertical steel bar bending forming is a kind of new process of bending method. The bending speed, bending radius and clamping length H which is the parameters of vertical steel bar bending machine , is directly affect the quality of bending forming parts. This paper calculated the length of reinforcement before being incised and the springback angle of bending steel bar which obtained the reasonable cutting length and bending Angle; Then based on rigid-flexible virtual prototype technology to build the dynamics model of vertical steel bar bending system. Through simulation analysis ,it obtained the relationship between bending speed, bending radius , clamping length H and forming quality of bending steel bar. In this paper, the analysis method have reference value to the design of similar steel bar bending machines.

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280-284

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December 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yuanyuan Zhang, Xinxin Gong, in: Comparative Analysis of Rebar Detailing for RC Structures. Journal of Construction Science and Engineering. 01 (2012) 70-86.

Google Scholar

[2] Fei Xiao, Dapeng Zhang, in: Development of Automated Bending Production Line. Construction Mechanization. 07(2013)62-63.

Google Scholar

[3] Zhendong Chen. Two-way Bending of Vertical Steel Bar Bending Machine, China patent, 2010206120362. (2010).

Google Scholar

[4] JG/T 226-2008, Fabricated rebar for concrete structures.

Google Scholar

[5] Shuli Yan, Shiyuan Du, in: The Rebar Bending-resilience Experiment and the Correction of Mathematical Model. Mechanical Management and Development, 06(2010) 68 -69.

Google Scholar

[6] Xijian Zheng, Zhongnan Wang, Lei Ma, in: Analysis of Influence Parameters of the Project Ribbed Bar Machining Quality. Applied Mechanics and Materials, (2013).

DOI: 10.4028/www.scientific.net/amm.328.426

Google Scholar

[7] Weidon Guo. Virtual Prototype Technology with ADMAS Application Instance Tutorial. Beijing : BeiHang University Press. (2008).

Google Scholar